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Prediction of on-water performance in outrigger canoeing using laboratory tests: the influence of sex and anthropometric characteristics

Frontiers in Sports and Active Living | 2026

Paper Details

Authors: Estácio Costa F.; Kons R.L.; Caputo F.; Dal Pupo J.

DOI: 10.3389/fspor.2026.1807781

Journal: Frontiers in Sports and Active Living

Year: 2026

Publisher: Frontiers Media SA

Document Type: Article

Open Access: All Open Access; Gold Open Access; Green Open Access

Cited by: 0

Abstract

The relationship between laboratory-based ergometer performance, body size, and on-water outrigger canoe (OC) racing remains unclear. This study examined associations between anthropometric characteristics, ergometer-derived performance, and on-water endurance performance in OC athletes using a sex-specific approach. Competitive paddlers (22 males and 16 females) completed anthropometric assessments, an incremental test, a 1000-m time trial, and a maximum paddling power test on an OC-adapted ergometer, as well as a 4.18-km simulated on-water race. Sex-specific statistical analyses, including allometric scaling and regression models, were used to identify determinants of on-water performance. Male athletes exhibited greater body mass, height, lean body mass, and superior performance in all ergometer and on-water tests compared with females (p < 0.01). In females only, body mass and lean body mass were moderately to strongly associated with ergometer-derived power outputs (r = 0.66–0.85, p < 0.01), whereas no such relationships were observed in males. Significant allometric scaling effects were identified exclusively in females for power-based ergometer variables, indicating disproportionate increases in power with increasing body and lean mass. No anthropometric variables were associated with on-water performance in either sex. In regression analyses, incremental peak power was the strongest predictor of on-water performance in males (adjusted R2 = 0.69), whereas in females, 1000-m mean power allometrically adjusted for body mass best predicted on-water speed (adjusted R2 = 0.67). These findings emphasize the importance of sex-specific interpretation of ergometer assessments and consideration of body size when relating laboratory performance to real-world OC racing. © 2026 Estácio Costa, Kons, Caputo and Dal Pupo.

Keywords

allometric scaling; athletic performance; endurance exercise; field-based performance; power output